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脊髓灰质炎病毒组装过程中VP0成熟裂解的作用和机制:2.9埃分辨率下空衣壳组装中间体的结构

Role and mechanism of the maturation cleavage of VP0 in poliovirus assembly: structure of the empty capsid assembly intermediate at 2.9 A resolution.

作者信息

Basavappa R, Syed R, Flore O, Icenogle J P, Filman D J, Hogle J M

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Protein Sci. 1994 Oct;3(10):1651-69. doi: 10.1002/pro.5560031005.

Abstract

The crystal structure of the P1/Mahoney poliovirus empty capsid has been determined at 2.9 A resolution. The empty capsids differ from mature virions in that they lack the viral RNA and have yet to undergo a stabilizing maturation cleavage of VP0 to yield the mature capsid proteins VP4 and VP2. The outer surface and the bulk of the protein shell are very similar to those of the mature virion. The major differences between the 2 structures are focused in a network formed by the N-terminal extensions of the capsid proteins on the inner surface of the shell. In the empty capsids, the entire N-terminal extension of VP1, as well as portions corresponding to VP4 and the N-terminal extension of VP2, are disordered, and many stabilizing interactions that are present in the mature virion are missing. In the empty capsid, the VP0 scissile bond is located some 20 A away from the positions in the mature virion of the termini generated by VP0 cleavage. The scissile bond is located on the rim of a trefoil-shaped depression in the inner surface of the shell that is highly reminiscent of an RNA binding site in bean pod mottle virus. The structure suggests plausible (and ultimately testable) models for the initiation of encapsidation, for the RNA-dependent autocatalytic cleavage of VP0, and for the role of the cleavage in establishing the ordered N-terminal network and in generating stable virions.

摘要

P1/马奥尼脊髓灰质炎病毒空衣壳的晶体结构已在2.9埃分辨率下确定。空衣壳与成熟病毒粒子的不同之处在于它们缺乏病毒RNA,且尚未经历VP0的稳定成熟切割以产生成熟衣壳蛋白VP4和VP2。其外表面和蛋白质外壳的主体与成熟病毒粒子非常相似。这两种结构之间的主要差异集中在外壳内表面由衣壳蛋白N端延伸形成的网络中。在空衣壳中,VP1的整个N端延伸以及对应于VP4和VP2 N端延伸的部分是无序的,并且成熟病毒粒子中存在的许多稳定相互作用缺失。在空衣壳中,VP0的可裂解键位于外壳内表面三叶形凹陷的边缘,该凹陷高度让人联想到菜豆斑驳病毒中的RNA结合位点。该结构为衣壳化的起始、VP0的RNA依赖性自催化切割以及切割在建立有序N端网络和产生稳定病毒粒子中的作用提出了合理(且最终可检验)的模型。

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